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Electrophysiological monitoring of cerebellar evoked potentials following fluid percussion injury

机译:液压冲击损伤后小脑诱发电位的电生理监测

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Cerebellum is highly susceptible to traumatic injuries, and yet it has rarely been studied in the context of traumatic brain injury (TBI). Much of the TBI research in the cerebellum has been conducted through histochemical techniques, particularly using selective protein staining. In this study, we investigated if fluid percussion injury (FPI) was detectable using electrophysiological recordings of the cerebellar activity with multi-contact array electrodes. Rats were chronically implanted with micro ECoG electrodes on the paramedian lobule (PML). The FPI was induced via a skull opening near the electrode implant on the cerebellum. Spontaneous and evoked potentials (EPs) featured almost immediate alterations in their waveform patterns after the delivery of pressure pulse. Recorded evoked potential amplitudes declined drastically by the next day. We also studied the linear correlation changes between all the electrode contact pairs and observed a significant decrease (R from > 0.7 to < 0.4, p <.001) as a result of injury. The results suggest that electrophysiological recording with chronic electrode implants can be used as a method of detection and longitudinal monitoring of subtle effects of TBI in the cerebellar circuits.
机译:小脑高度易受创伤的伤害,但很少在颅脑创伤(TBI)的背景下进行研究。小脑的TBI研究大部分是通过组织化学技术进行的,特别是使用选择性蛋白染色的技术。在这项研究中,我们调查了使用多触点阵列电极的小脑活动的电生理记录,是否可以检测到液压冲击损伤(FPI)。将大鼠的微型ECoG电极长期植入到旁中叶(PML)上。 FPI是通过小脑上电极植入物附近的颅骨开口诱导的。自发和诱发电位(EP)的特征是在压力脉冲传递后,其波形模式几乎立即发生变化。到第二天,记录的诱发电位振幅急剧下降。我们还研究了所有电极触点对之间的线性相关性变化,并观察到由于损伤而导致的显着降低(R从> 0.7到<0.4,p <.001)。结果表明,慢性电极植入物的电生理记录可用作检测和纵向监测TBI在小脑回路中微妙作用的方法。

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